首页> 外文期刊>Journal of the Association for Research in Otolaryngology: JARO >The effect of Gaussian noise on the threshold, dynamic range, and loudness of analogue cochlear implant stimuli.
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The effect of Gaussian noise on the threshold, dynamic range, and loudness of analogue cochlear implant stimuli.

机译:高斯噪声对模拟人工耳蜗植入刺激的阈值,动态范围和响度的影响。

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摘要

The deliberate addition of Gaussian noise to cochlear implant signals has previously been proposed to enhance the time coding of signals by the cochlear nerve. Potentially, the addition of an inaudible level of noise could also have secondary benefits: it could lower the threshold to the information-bearing signal, and by desynchronization of nerve discharges, it could increase the level at which the information-bearing signal becomes uncomfortable. Both these effects would lead to an increased dynamic range, which might be expected to enhance speech comprehension and make the choice of cochlear implant compression parameters less critical (as with a wider dynamic range, small changes in the parameters would have less effect on loudness). The hypothesized secondary effects were investigated with eight users of the Clarion cochlear implant; the stimulation was analogue and monopolar. For presentations in noise, noise at 95% of the threshold level was applied simultaneously and independently to all the electrodes. The noise was found in two-alternative forced-choice (2AFC) experiments to decrease the threshold to sinusoidal stimuli (100 Hz, 1 kHz, 5 kHz) by about 2.0 dB and increase the dynamic range by 0.7 dB. Furthermore, in 2AFC loudness balance experiments, noise was found to decrease the loudness of moderate to intense stimuli. This suggests that loudness is partially coded by the degree of phase-locking of cochlear nerve fibers. The overall gain in dynamic range was modest, and more complex noise strategies, for example, using inhibition between the noise sources, may be required to get a clinically useful benefit.
机译:以前已经有人提出将高斯噪声故意加到人工耳蜗信号上,以增强人工神经对信号的时间编码。潜在地,增加听不见的噪声水平还可能具有第二个好处:它可以降低信息承载信号的阈值,并且通过神经放电的失步,可以增加信息承载信号变得不舒服的水平。这两种影响都将导致动态范围的增加,这可能会增强语音理解能力,并使对耳蜗植入物压缩参数的选择不太关键(因为动态范围较大,参数的较小变化对响度的影响就较小) 。假设的次要效果是使用8名Clarion人工耳蜗使用者进行的。刺激是模拟的和单极的。对于噪声的呈现,将阈值水平的95%的噪声同时且独立地应用于所有电极。在两个备选强制选择(2AFC)实验中发现了噪声,以将正弦刺激(100 Hz,1 kHz,5 kHz)的阈值降低了约2.0 dB,并将动态范围提高了0.7 dB。此外,在2AFC响度平衡实验中,发现噪音会降低中度到强烈刺激的响度。这表明响度部分由耳蜗神经纤维的锁相程度编码。动态范围内的总增益是适度的,并且可能需要更复杂的噪声策略,例如,使用噪声源之间的抑制来获得临床上有用的好处。

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